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The Development of Macrophage-Mediated Cell Therapy to Improve Skeletal Muscle Function after Injury

机译:巨噬细胞介导的细胞疗法改善损伤后骨骼肌功能的研究进展

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摘要

Skeletal muscle regeneration following acute injury is a multi-step process involving complex changes in tissue microenvironment. Macrophages (MPs) are one of the key cell types involved in orchestration and modulation of the repair process. Multiple studies highlight the essential role of MPs in the control of the myogenic program and inflammatory response during skeletal muscle regeneration. A variety of MP phenotypes have been identified and characterized in vitro as well as in vivo. As such, MPs hold great promise for cell-based therapies in the field of regenerative medicine. In this study we used bone-marrow derived in vitro LPS/IFN-y-induced M1 MPs to enhance functional muscle recovery after tourniquet-induced ischemia/reperfusion injury (TK-I/R). We detected a 15% improvement in specific tension and force normalized to mass after M1 (LPS/IFN-γ) MP transplantation 24 hours post-reperfusion. Interestingly, we found that M0 bone marrow-derived unpolarized MPs significantly impaired muscle function highlighting the complexity of temporally coordinated skeletal muscle regenerative program. Furthermore, we show that delivery of M1 (LPS/IFN-γ) MPs early in regeneration accelerates myofiber repair, decreases fibrotic tissue deposition and increases whole muscle IGF-I expression.
机译:急性损伤后的骨骼肌再生是一个多步骤的过程,涉及组织微环境的复杂变化。巨噬细胞(MPs)是参与协调和修复过程调节的关键细胞类型之一。多项研究强调了MP在骨骼肌再生过程中对肌源程序和炎症反应的控制中的重要作用。已经在体外以及体内鉴定并表征了多种MP表型。因此,国会议员在再生医学领域对基于细胞的疗法抱有巨大希望。在这项研究中,我们使用了源自骨髓的体外LPS /IFN-γ诱导的M1 MP,以增强止血带引起的缺血/再灌注损伤(TK-I / R)后的功能性肌肉恢复。在再灌注后24小时,M1(LPS /IFN-γ)MP移植后,我们将比张力和相对于质量标准化的力量提高了15%。有趣的是,我们发现M0衍生的非极化MP会严重损害肌肉功能,从而突出了时间协调的骨骼肌再生程序的复杂性。此外,我们表明,在再生早期递送M1(LPS /IFN-γ)MP会加速肌纤维修复,减少纤维化组织沉积并增加全肌肉IGF-1的表达。

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